S-1133B55-I8T1G

更新时间:2024-09-18 06:54:14
品牌:SII
描述:HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR

S-1133B55-I8T1G 概述

HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR 高纹波抑制率低压差型中,输出电流CMOS电压稳压器

S-1133B55-I8T1G 数据手册

通过下载S-1133B55-I8T1G数据手册来全面了解它。这个PDF文档包含了所有必要的细节,如产品概述、功能特性、引脚定义、引脚排列图等信息。

PDF下载
Rev.2.1_00  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT  
CMOS VOLTAGE REGULATOR  
S-1133 Series  
The S-1133 Series is a positive voltage regulator with a low dropout  
voltage, high output voltage accuracy, and low current consumption  
(300 mA output current) developed based on CMOS technology.  
A 1 µF small ceramic capacitor can be used*1. It operates with low  
current consumption of 60 µA typ. The S-1133 Series includes an  
overcurrent protection circuit that prevents the output current from  
exceeding the current capacitance of the output transistor and a  
thermal shutdown circuit that prevents damage due to overheating.  
In addition to the types in which output voltage is set inside the IC,  
a type for which output voltage can be set via an external resistor is  
added to a lineup (S-1133x00 Series). SOT-89-5 and super-small  
SNT-8A packages realize high-density mounting. This, in addition  
to low current consumption, makes the S-1133 Series ideal for  
mobile devices.  
*1. A ceramic capacitor of 2.2 µF or more can be used for products  
whose output voltage is 1.7 V or less.  
„ Features  
Output voltage :  
Voltage setting via external resistor :  
Input voltage range :  
1.2 to 6.0 V, selectable in 0.1 V steps.  
Selectable from 1.8 to 8.2 V (S-1133B00/S-1133A00)  
2.0 to 10 V  
High-accuracy output voltage :  
Low dropout voltage :  
Low current consumption :  
1.0% accuracy (1.2 to 1.4 V output product : 15 mV accuracy)  
130 mV typ. (3.0 V output product, IOUT = 100 mA)  
During operation :  
60 µA typ., 90 µA max.  
During shutdown : 0.1 µA typ., 1.0 µA max.  
300 mA output is possible (at VIN VOUT(S) + 1.0 V)*1  
A ceramic capacitor of 1.0 µF or more can be used for the input and output  
capacitors.  
Output current :  
Low ESR capacitor can be used :  
(A ceramic capacitor of 2.2 µF or more can be used for products whose  
output voltage is 1.7 V or less.)  
High ripple rejection :  
70 dB typ. (at 1.0 kHz, VOUT = 1.2 V)  
Built-in overcurrent protection circuit : Overcurrent of output transistor can be restricted.  
Built-in thermal shutdown circuit :  
Built-in ON/OFF circuit :  
Small package :  
Prevents damage due to overheating.  
Ensures long battery life.  
SOT-89-5, SNT-8A  
Lead-free products  
*1. Attention should be paid to the power dissipation of the package when the output current is large.  
„ Applications  
Power supply for battery-powered devices  
Power supply for communication devices  
Power supply for home electric appliances  
„ Packages  
Drawing Code  
Package Name  
Package  
UP005-A  
PH008-A  
Tape  
UP005-A  
PH008-A  
Reel  
UP005-A  
PH008-A  
Land  
UP005-A  
PH008-A  
SOT-89-5  
SNT-8A  
Seiko Instruments Inc.  
1
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Block Diagrams  
1. Types in which output voltage is internally set (S-1133x12 to S-1133x60)  
*1  
VOUT  
VIN  
Thermal  
shutdown circuit  
Overcurrent  
protection circuit  
ON/OFF  
circuit  
ON/OFF  
Reference  
voltage circuit  
VSS  
*1. Parasitic diode  
Figure 1  
2. Types in which output voltage is externally set (S-1133B00 and S-1133A00 only)  
*1  
VOUT  
VADJ  
VIN  
Thermal  
shutdown circuit  
Overcurrent  
protection circuit  
ON/OFF  
circuit  
ON/OFF  
Reference  
voltage circuit  
VSS  
*1. Parasitic diode  
Figure 2  
2
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Product Name Structure  
The product types, output voltage, and package types for the S-1133 Series can be selected at the user’s request.  
Refer to the “Product name” for the meanings of the characters in the product name and “Product name list” for the  
full product names.  
1. Product name  
S-1133  
x
xx  
-
xxxx  
G
Package abbreviation and packing specifications*1  
U5T1 : SOT-89-5, Tape  
I8T1 : SNT-8A, Tape  
Output voltage  
00 :  
Externally set  
12 to 60 : Internally set  
(e.g., when the output voltage is 1.2 V, it is expressed as 12.)  
Product type*2  
A : ON/OFF pin negative logic  
B : ON/OFF pin positive logic  
*1. Refer to the taping specifications at the end of this book.  
*2. Refer to “3. Shutdown pin (ON/OFF pin)” in “Operation”.  
Seiko Instruments Inc.  
3
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
2. Product name list  
Table 1 (1/2)  
Output Voltage  
SOT-89-5  
S-1133B00-U5T1G  
SNT-8A  
S-1133B00-I8T1G  
S-1133B12-I8T1G  
S-1133B13-I8T1G  
S-1133B14-I8T1G  
S-1133B15-I8T1G  
S-1133B16-I8T1G  
S-1133B17-I8T1G  
S-1133B18-I8T1G  
S-1133B19-I8T1G  
S-1133B20-I8T1G  
S-1133B21-I8T1G  
S-1133B22-I8T1G  
S-1133B23-I8T1G  
S-1133B24-I8T1G  
S-1133B25-I8T1G  
S-1133B26-I8T1G  
S-1133B27-I8T1G  
S-1133B28-I8T1G  
S-1133B29-I8T1G  
S-1133B30-I8T1G  
S-1133B31-I8T1G  
S-1133B32-I8T1G  
S-1133B33-I8T1G  
S-1133B34-I8T1G  
S-1133B35-I8T1G  
S-1133B36-I8T1G  
S-1133B37-I8T1G  
S-1133B38-I8T1G  
S-1133B39-I8T1G  
S-1133B40-I8T1G  
S-1133B41-I8T1G  
S-1133B42-I8T1G  
S-1133B43-I8T1G  
S-1133B44-I8T1G  
S-1133B45-I8T1G  
S-1133B46-I8T1G  
S-1133B47-I8T1G  
S-1133B48-I8T1G  
S-1133B49-I8T1G  
S-1133B50-I8T1G  
S-1133B51-I8T1G  
S-1133B52-I8T1G  
S-1133B53-I8T1G  
S-1133B54-I8T1G  
S-1133B55-I8T1G  
S-1133B56-I8T1G  
Externally set  
1.2 V 15 mV  
1.3 V 15 mV  
1.4 V 15 mV  
1.5 V 1.0%  
1.6 V 1.0%  
1.7 V 1.0%  
1.8 V 1.0%  
1.9 V 1.0%  
2.0 V 1.0%  
2.1 V 1.0%  
2.2 V 1.0%  
2.3 V 1.0%  
2.4 V 1.0%  
2.5 V 1.0%  
2.6 V 1.0%  
2.7 V 1.0%  
2.8 V 1.0%  
2.9 V 1.0%  
3.0 V 1.0%  
3.1 V 1.0%  
3.2 V 1.0%  
3.3 V 1.0%  
3.4 V 1.0%  
3.5 V 1.0%  
3.6 V 1.0%  
3.7 V 1.0%  
3.8 V 1.0%  
3.9 V 1.0%  
4.0 V 1.0%  
4.1 V 1.0%  
4.2 V 1.0%  
4.3 V 1.0%  
4.4 V 1.0%  
4.5 V 1.0%  
4.6 V 1.0%  
4.7 V 1.0%  
4.8 V 1.0%  
4.9 V 1.0%  
5.0 V 1.0%  
5.1 V 1.0%  
5.2 V 1.0%  
5.3 V 1.0%  
5.4 V 1.0%  
5.5 V 1.0%  
5.6 V 1.0%  
S-1133B12-U5T1G  
S-1133B13-U5T1G  
S-1133B14-U5T1G  
S-1133B15-U5T1G  
S-1133B16-U5T1G  
S-1133B17-U5T1G  
S-1133B18-U5T1G  
S-1133B19-U5T1G  
S-1133B20-U5T1G  
S-1133B21-U5T1G  
S-1133B22-U5T1G  
S-1133B23-U5T1G  
S-1133B24-U5T1G  
S-1133B25-U5T1G  
S-1133B26-U5T1G  
S-1133B27-U5T1G  
S-1133B28-U5T1G  
S-1133B29-U5T1G  
S-1133B30-U5T1G  
S-1133B31-U5T1G  
S-1133B32-U5T1G  
S-1133B33-U5T1G  
S-1133B34-U5T1G  
S-1133B35-U5T1G  
S-1133B36-U5T1G  
S-1133B37-U5T1G  
S-1133B38-U5T1G  
S-1133B39-U5T1G  
S-1133B40-U5T1G  
S-1133B41-U5T1G  
S-1133B42-U5T1G  
S-1133B43-U5T1G  
S-1133B44-U5T1G  
S-1133B45-U5T1G  
S-1133B46-U5T1G  
S-1133B47-U5T1G  
S-1133B48-U5T1G  
S-1133B49-U5T1G  
S-1133B50-U5T1G  
S-1133B51-U5T1G  
S-1133B52-U5T1G  
S-1133B53-U5T1G  
S-1133B54-U5T1G  
S-1133B55-U5T1G  
S-1133B56-U5T1G  
4
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
Table 1 (2/2)  
Output Voltage  
5.7 V 1.0%  
5.8 V 1.0%  
5.9 V 1.0%  
6.0 V 1.0%  
SOT-89-5  
S-1133B57-U5T1G  
S-1133B58-U5T1G  
S-1133B59-U5T1G  
S-1133B60-U5T1G  
SNT-8A  
S-1133B57-I8T1G  
S-1133B58-I8T1G  
S-1133B59-I8T1G  
S-1133B60-I8T1G  
Remark Please contact our sales office for type A products.  
Seiko Instruments Inc.  
5
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Pin Configurations  
Table 2  
SOT-89-5  
Top view  
Pin No.  
1
Symbol  
VADJ  
Description  
Output voltage adjustment pin  
(S-1133B00/S-1133A00 only)  
No connection  
5
4
NC*1  
(S-1133x12 to S-1133x60)  
GND pin  
Shutdown pin  
2
3
4
5
VSS  
ON/OFF  
VIN  
Voltage input pin  
VOUT  
Voltage output pin  
*1. The NC pin is electrically open.  
1
2
3
The NC pin can be connected to VIN or VSS.  
Figure 3  
Table 3  
SNT-8A  
Top view  
Pin No.  
Pin Name  
VOUT*1  
VOUT*1  
Functions  
Voltage output pin  
Voltage output pin  
1
2
8
7
6
5
1
2
3
4
No connection  
NC*2  
(S-1133x12 to S-1133x60)  
Output voltage adjustment pin  
(S-1133B00/S-1133A00 only)  
No connection  
3
VADJ  
4
5
6
7
8
NC*2  
VSS  
GND pin  
Figure 4  
ON/OFF  
VIN*3  
Shutdown pin  
Voltage input pin  
Voltage input pin  
VIN*3  
*1. Although pins of number 1 and 2 are connected internally, be  
sure to short-circuit them nearest in use.  
*2. The NC pin is electrically open.  
The NC pin can be connected to VIN or VSS.  
*3. Although pins of number 7 and 8 are connected internally, be  
sure to short-circuit them nearest in use.  
6
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Absolute Maximum Ratings  
Table 4  
(Ta = 25 °C unless otherwise specified)  
Item  
Symbol  
VIN  
VON/OFF  
VADJ  
VOUT  
Absolute Maximum Rating  
Unit  
V
V
V
V
mW  
mW  
°C  
°C  
V
SS 0.3 to VSS + 12  
SS 0.3 to VSS + 12  
SS 0.3 to VSS + 12  
SS 0.3 to VIN + 0.3  
1000*1  
Input voltage  
V
V
V
Output voltage  
SOT-89-5  
SNT-8A  
Power dissipation  
PD  
450*1  
Operating ambient temperature  
Storage temperature  
Topr  
Tstg  
40 to +85  
40 to +125  
*1. When mounted on printed circuit board  
[Mounted Board]  
(1) Board size : 114.3 mm × 76.2 mm × t1.6 mm  
(2) Board name : JEDEC STANDARD51-7  
Caution The absolute maximum ratings are rated values exceeding which the product could suffer physical  
damage. These values must therefore not be exceeded under any conditions.  
1200  
SOT-89-5  
800  
SNT-8A  
400  
0
100  
Ambient Temperature (Ta) [°C]  
150  
50  
0
Figure 5 Power Dissipation of Packages (Mounted on Printed Circuit Board)  
Caution The thermal shutdown circuit may operate when the junction temperature is around 150 °C.  
Seiko Instruments Inc.  
7
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Electrical Characteristics  
1. Types in which output voltage is internally set (S-1133x12 to S-1133x60)  
Table 5  
(Ta = 25 °C unless otherwise specified)  
Test  
Item  
Symbol  
VOUT(E)  
Conditions  
Min.  
Typ.  
Max.  
Unit  
V
Circuit  
VIN  
=
VOUT(S)  
+
1.0 V,  
VOUT(S)  
0.015  
VOUT(S)  
× 0.99  
300*5  
0.8  
VOUT(S)  
+ 0.015  
VOUT(S)  
× 1.01  
0.88  
0.78  
0.68  
0.58  
0.23  
0.21  
Output voltage*1  
1.2 V  
1.5 V  
VOUT(S)  
VOUT(S)  
1.4 V  
6.0 V  
VOUT(S)  
VOUT(S)  
1
IOUT  
=
100 mA  
V
1
Output current*2  
Dropout voltage*3  
IOUT  
Vdrop  
VIN  
IOUT  
=
VOUT(S)  
100 mA  
+
1.0 V  
mA  
V
V
V
V
V
V
V
V
3
1
1
1
1
1
1
1
1
VOUT(S)  
VOUT(S)  
VOUT(S)  
=
=
=
1.2 V  
1.3 V  
1.4 V  
0.84  
0.74  
0.64  
0.54  
0.15  
0.14  
0.13  
0.10  
1.5 V  
2.0 V  
2.5 V  
3.0 V  
3.3 V  
VOUT(S)  
VOUT(S)  
VOUT(S)  
VOUT(S)  
VOUT(S)  
1.9 V  
2.4 V  
2.9 V  
3.2 V  
6.0 V  
0.19  
0.15  
VOUT1  
VIN VOUT  
Line regulation  
Load regulation  
VOUT(S)  
VIN  
1.0 mA IOUT  
+
0.5 V  
VIN  
10 V, IOUT  
=
100 mA  
0.02  
15  
0.2  
40  
%/V  
1
1
1
2
=
VOUT(S)  
+
1.0 V,  
VOUT2  
mV  
100 mA  
1.0 V, IOUT  
85  
VOUT  
Ta VOUT  
Output voltage  
VIN  
=
°
=
VOUT(S)  
Ta  
VOUT(S)  
+
+
=
30 mA,  
ppm/  
°C  
130  
60  
temperature coefficient*4  
Current consumption  
during operation  
Current consumption  
during shutdown  
Input voltage  
40  
C
°
C
VIN  
no load  
VIN  
no load  
1.0 V, ON/OFF pin  
1.0 V, ON/OFF pin  
=
ON,  
ISS1  
90  
µA  
=
VOUT(S)  
+
=
OFF,  
ISS2  
VIN  
0.1  
1.0  
10  
µA  
V
2
4
2.0  
1.5  
Shutdown pin  
input voltage “H”  
Shutdown pin  
input voltage “L”  
Shutdown pin  
input current “H”  
Shutdown pin  
input current “L”  
VSH  
VIN  
VIN  
VIN  
=
=
=
VOUT(S)  
VOUT(S)  
VOUT(S)  
+
+
+
1.0 V, RL  
1.0 V, RL  
=
=
1.0 k  
1.0 k  
V
VSL  
ISH  
ISL  
0.25  
0.1  
V
4
4
4
1.0 V, VON/OFF  
1.0 V, VON/OFF  
=
=
7 V  
0 V  
0.1  
0.1  
µA  
µA  
VIN  
VIN  
=
=
VOUT(S)  
VOUT(S)  
+
+
0.1  
1.0 V,  
1.2 V  
VOUT(S)  
VOUT(S)  
VOUT(S)  
1.5 V  
3.0 V  
6.0 V  
70  
65  
60  
dB  
dB  
dB  
5
5
5
f
=
1.0 kHz,  
Vrip 0.5 Vrms,  
IOUT 50 mA  
VOUT(S)  
0 V  
RR  
Ripple rejection  
1.6 V  
=
3.1 V  
=
=
VIN  
VOUT  
+ 1.0 V, ON/OFF pin = ON,  
Short-circuit current  
Ishort  
TSD  
TSR  
200  
150  
120  
mA  
°C  
3
=
Thermal shutdown  
detection temperature  
Thermal shutdown  
release temperature  
Junction temperature  
Junction temperature  
°C  
8
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
*1. VOUT(S) : Specified output voltage  
VOUT(E) : Actual output voltage at the fixed load  
The output voltage when fixing IOUT (= 100 mA) and inputting VOUT(S) + 1.0 V  
*2. The output current at which the output voltage becomes 95% of VOUT(E) after gradually increasing the output current.  
*3.  
V
drop = VIN1 (VOUT3 × 0.98)  
VOUT3 is the output voltage when VIN = VOUT(S) + 1.0 V and IOUT = 100 mA.  
VIN1 is the input voltage at which the output voltage becomes 98% of VOUT3 after gradually decreasing the input  
voltage.  
*4. The change in temperature [mV/°C] is calculated using the following equation.  
VOUT  
Ta  
VOUT  
Ta VOUT  
*2  
[
mV/°C *1  
]
= VOUT(S)  
[
V
]
×
[
ppm/°C *3  
÷1000  
]
*1. The change in temperature of the output voltage  
*2. Specified output voltage  
*3. Output voltage temperature coefficient  
*5. The output current can be at least this value. Due to restrictions on the package power dissipation, this value may not  
be satisfied. Attention should be paid to the power dissipation of the package when the output current is large. This  
specification is guaranteed by design.  
Seiko Instruments Inc.  
9
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
2. Types in which output voltage is externally set (S-1133B00 and S-1133A00 only)  
Table 6  
(Ta = 25 °C unless otherwise specified)  
Test  
Item  
Symbol  
VVADJ  
Conditions  
Min.  
Typ.  
Max.  
Unit  
Circuit  
Output voltage of adjust  
pin*1  
VVADJ  
IOUT  
=
VOUT, VIN  
=
VOUT(S) + 1.0 V,  
1.782  
1.8  
1.800  
1.818  
8.2  
V
V
6
=
100 mA  
Output voltage range  
Internal resistance value  
of adjust pin  
VROUT  
RVADJ  
11  
200  
kΩ  
Output current*2  
Dropout voltage*3  
IOUT  
Vdrop  
VOUT1  
VIN  
IOUT  
=
VOUT(S)  
+
1.0 V  
100 mA, VVADJ  
VOUT, VOUT(S)  
300*5  
0.24  
0.28  
mA  
V
8
6
=
+
VOUT, VOUT(S)  
=
1.8 V  
VVADJ  
=
0.5 V VIN  
10 V,  
Line regulation  
0.02  
15  
0.2  
40  
%/V  
6
6
6
7
VIN VOUT  
IOUT  
= 100 mA  
VVADJ  
1.0 mA  
=
VOUT, VIN  
IOUT 100 mA  
1.0 V, IOUT  
85  
1.0 V, VOUT  
ON, no load  
=
VOUT(S)  
+
1.0 V,  
Load regulation  
VOUT2  
mV  
VOUT  
Ta VOUT  
Output voltage  
VIN  
=
VOUT(S)  
Ta  
VOUT(S)  
+
+
=
+
=
=
30 mA,  
ppm/  
°C  
130  
60  
temperature coefficient*4  
Current consumption  
during operation  
Current consumption  
during shutdown  
Input voltage  
40  
°
C
°
C
VIN  
=
=
VVADJ  
,
,
ISS1  
90  
µA  
ON/OFF pin  
VIN  
=
VOUT(S)  
1.0 V, VOUT  
OFF, no load  
=
VVADJ  
ISS2  
VIN  
0.1  
1.0  
10  
µA  
V
7
9
ON/OFF pin  
2.0  
1.5  
Shutdown pin  
input voltage “H”  
Shutdown pin  
input voltage “L”  
Shutdown pin  
input current “H”  
Shutdown pin  
input current “L”  
VSH  
VIN  
VIN  
VIN  
VIN  
=
=
=
=
VOUT(S)  
VOUT(S)  
VOUT(S)  
VOUT(S)  
+
+
+
+
1.0 V, RL  
1.0 V, RL  
=
=
1.0 k  
1.0 k  
V
VSL  
ISH  
ISL  
0.25  
0.1  
V
9
9
9
1.0 V, VON/OFF  
=
=
7 V  
0.1  
0.1  
µA  
µA  
1.0 V, VON/OFF  
0 V  
0.1  
VVADJ  
1.0 kHz,  
IOUT  
=
VOUT, VIN  
=
=
VOUT(S)  
0.5 Vrms,  
1.8 V  
+
1.0 V,  
RR  
f
=
Vrip  
Ripple rejection  
65  
dB  
10  
=
50 mA, VOUT(S)  
VOUT(S) 1.0 V, ON/OFF pin  
0 V  
=
VIN  
=
VOUT  
+
= ON,  
Short-circuit current  
Ishort  
TSD  
TSR  
200  
150  
120  
mA  
°C  
8
=
Thermal shutdown  
detection temperature  
Thermal shutdown  
release temperature  
Junction temperature  
Junction temperature  
°C  
10  
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
*1. VOUT(S) : Extarnal setting reference voltage ( = 1.8 V)  
*2. The output current at which the output voltage becomes 95% of VVADJ after gradually increasing the output current.  
*3.  
V
drop = VIN1 (VOUT3 × 0.98)  
VOUT3 is the output voltage when VIN = VOUT(S) + 1.0 V and IOUT = 100 mA.  
VIN1 is the input voltage at which the output voltage becomes 98% of VOUT3 after gradually decreasing the input  
voltage.  
*4. The change in temperature [mV/°C] is calculated using the following equation.  
VOUT  
Ta  
VOUT  
Ta VOUT  
[
mV/°C *1  
]
= VOUT(S)  
[
V *2  
]
×
[
ppm/°C *3  
÷1000  
]
*1. The change in temperature of the output voltage  
*2. Extarnal setting reference voltage  
*3. Output voltage temperature coefficient  
*5. The output current can be at least this value. Due to restrictions on the package power dissipation, this value may not  
be satisfied. Attention should be paid to the power dissipation of the package when the output current is large. This  
specification is guaranteed by design.  
Seiko Instruments Inc.  
11  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Test Circuits  
1.  
+
VIN  
A
VOUT  
VSS  
+
V
ON/OFF  
Set to power ON  
Figure 6  
2.  
3.  
4.  
+
A
VIN  
VOUT  
VSS  
ON/OFF  
Set to VIN or  
GND  
Figure 7  
+
VIN  
VOUT  
A
+
V
ON/OFF  
VSS  
Set to power ON  
Figure 8  
VOUT  
VSS  
VIN  
+
+
RL  
A
ON/OFF  
V
Figure 9  
5.  
VIN  
VOUT  
+
V
ON/OFF  
RL  
VSS  
Set to power ON  
Figure 10  
12  
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
6.  
+
VIN  
A
VOUT  
VADJ  
+
V
ON/OFF  
VSS  
Set to power ON  
Figure 11  
7.  
+
A
VIN  
VOUT  
VADJ  
ON/OFF  
VSS  
Set to VIN or  
GND  
Figure 12  
+
8.  
VIN  
VOUT  
VADJ  
A
+
V
ON/OFF  
VSS  
Set to power ON  
Figure 13  
9.  
VIN  
VOUT  
VADJ  
+
+
V
V
V
A
ON/OFF  
RL  
VSS  
Figure 14  
10.  
11.  
VIN  
VOUT  
VADJ  
+
ON/OFF  
RL  
VSS  
Set to power ON  
Figure 15  
+
VIN  
A
VOUT  
VADJ  
+
ON/OFF  
VSS  
Set to power ON  
Figure 16  
Seiko Instruments Inc.  
13  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Standard Circuit  
INPUT  
OUTPUT  
VIN  
VOUT  
*2  
*1  
CL  
ON/OFF  
CIN  
VSS  
GND  
Single GND  
*1. CIN is a capacitor for stabilizing the input.  
A ceramic capacitor of 2.2 µF or more can be used as the output capacitor for  
products whose output voltage is 1.7 V or less.  
*2. A ceramic capacitor of 1.0 µF or more can be used for CL.  
A ceramic capacitor of 2.2 µF or more can be used as the output capacitor for  
products whose output voltage is 1.7 V or less.  
Figure 17  
Caution The above connection diagram and constant will not guarantee successful operation. Perform  
thorough evaluation using the actual application to set the constant.  
„ Application Conditions  
Input capacitor (CIN) :  
Output capacitor (CL) :  
ESR of output capacitor :  
1.0 µF or more*1  
1.0 µF or more*1  
1.0 or less  
*1. 2.2 µF or more for products whose output voltage is 1.7 V or less  
Caution A general series regulator may oscillate, depending on the external components selected. Check  
that no oscillation occurs with the application using the above capacitor.  
„ Selection of Input and Output Capacitors (CIN, CL)  
The S-1133 Series requires an output capacitor between the VOUT and VSS pins for phase compensation. Operation is  
stabilized by a ceramic capacitor with an output capacitance of 1.0 µF or more*1 in the entire temperature range. However,  
when using an OS capacitor, tantalum capacitor, or aluminum electrolytic capacitor, a capacitor with a capacitance of 1.0 µF  
or more and an Equivalent Series Resistance (ESR) of 1.0 or less is required.  
The value of the output overshoot or undershoot transient response varies depending on the value of the output capacitor.  
Perform thorough evaluation using the actual application, including temperature characteristics.  
*1. The capacitance is 2.2 µF or more for products whose output voltage is 1.7 V or less.  
14  
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Explanation of Terms  
1. Low dropout voltage regulator  
The low dropout voltage regulator is a voltage regulator whose dropout voltage is low due to its built-in low on-  
resistance transistor.  
2. Low ESR  
A capacitor whose ESR (Equivalent Series Resistance) is low. The S-1133 Series enables use of a low ESR  
capacitor, such as a ceramic capacitor, for the output-side capacitor CL. A capacitor whose ESR is 1.0 or less can  
be used.  
3. Output voltage (VOUT  
)
The accuracy of the output voltage is ensured at 1.0% under the specified conditions of fixed input voltage*1, fixed  
output current, and fixed temperature.  
*1. Differs depending on the product.  
Caution If the above conditions change, the output voltage value may vary and exceed the accuracy  
range of the output voltage.  
characteristics data for details.  
Please see the electrical characteristics and attached  
Remark In the types of the S-1133 Series in which the output voltage is 1.2 to 1.4 V, the output voltage accuracy  
is 15 mV.  
VOUT1  
4. Line regulation  
VIN  
V
OUT  
Indicates the dependency of the output voltage on the input voltage. That is, the values show how much the output  
voltage changes due to a change in the input voltage with the output current remaining unchanged.  
5. Load regulation (VOUT2  
)
Indicates the dependency of the output voltage on the output current. That is, the values show how much the  
output voltage changes due to a change in the output current with the input voltage remaining unchanged.  
6. Dropout voltage (Vdrop  
)
Indicates the difference between the input voltage VIN1, which is the input voltage (VIN) at the point where the output  
voltage has fallen to 98% of the output voltage value VOUT3 after VIN was gradually decreased from VIN = VOUT(S)  
1.0 V, and the output voltage at that point (VOUT3 × 0.98).  
+
Vdrop = VIN1 (VOUT3 × 0.98)  
Seiko Instruments Inc.  
15  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
VOUT  
Ta VOUT  
7. Temperature coefficient of output voltage  
The shadowed area in Figure 18 is the range where VOUT varies in the operating temperature range when the  
temperature coefficient of the output voltage is 130 ppm/°C.  
Ex. S-1133B30 Typ.  
VOUT  
[V]  
+0.39 mV/°C  
*1  
VOUT(E)  
0.39 mV/°C  
40  
25  
Ta [°C]  
85  
*1.  
VOUT(E) is the value of the output voltage measured at 25°C.  
Figure 18  
A change in the temperature of the output voltage [mV/°C] is calculated using the following equation.  
VOUT  
Ta  
VOUT  
Ta VOUT  
*2  
[
mV/°C *1  
]
= VOUT(S)  
[
V
]
×
[
ppm/°C *3  
]
÷ 1000  
*1. Change in temperature of output voltage  
*2. Specified output voltage  
*3. Output voltage temperature coefficient  
16  
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Operation  
1. Basic operation  
Figure 19 shows the block diagram of the S-1133 Series.  
The error amplifier compares the reference voltage (Vref) with Vfb, which is the output voltage resistance-divided by  
feedback resistors Rs and Rf. It supplies the output transistor with the gate voltage necessary to ensure a certain  
output voltage free of any fluctuations of input voltage and temperature.  
VIN  
*1  
Current  
supply  
Error  
amplifier  
VOUT  
+
Vref  
Rf  
Vfb  
Reference  
voltage circuit  
Rs  
VSS  
*1. Parasitic diode  
Figure 19  
2. Output transistor  
The S-1133 Series uses a low on-resistance P-channel MOS FET as the output transistor.  
Be sure that VOUT does not exceed VIN + 0.3 V to prevent the voltage regulator from being damaged due to inverse  
current flowing from the VOUT pin through a parasitic diode to the VIN pin.  
Seiko Instruments Inc.  
17  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
3. Shutdown pin (ON/OFF pin)  
This pin starts and stops the regulator.  
When the ON/OFF pin is set to the shutdown level, the operation of all internal circuits stops, and the built-in P-channel  
MOS FET output transistor between the VIN pin and VOUT pin is turned off to substantially reduce the current  
consumption. The VOUT pin becomes the VSS level due to the internally divided resistance of several hundreds kΩ  
between the VOUT pin and VSS pin.  
The structure of the ON/OFF pin is as shown in Figure 20. Since the ON/OFF pin is neither pulled down nor pulled  
up internally, do not use it in the floating state. In addition, note that the current consumption increases if a voltage of  
0.3 V to VIN 0.3 V is applied to the ON/OFF pin. When the ON/OFF pin is not used, connect it to the VSS pin if the  
logic type is “A” and to the VIN pin if it is “B”.  
Table 7  
Logic Type  
ON/OFF Pin  
“L”: Power on  
“H”: Power off  
“L”: Power off  
“H”: Power on  
Internal Circuits  
Operating  
Stopped  
VOUT Pin Voltage  
Set value  
Current Consumption  
A
A
B
B
ISS1  
ISS2  
ISS2  
ISS1  
VSS level  
Stopped  
VSS level  
Operating  
Set value  
VIN  
ON/OFF  
VSS  
Figure 20  
18  
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
4. Thermal shutdown circuit  
The S-1133 Series implements a thermal shutdown circuit to protect the device from damage due to overheating.  
When the junction temperature rises to 150 °C (typ.), the thermal shutdown circuit operates and the regulator operation  
stops. When the junction temperature drops to 120 °C (typ.), the thermal shutdown circuit is released and the  
regulator operation resumes.  
If the thermal shutdown circuit starts operating due to self-heating, the regulator operation stops and the output voltage  
falls. When the regulator operation has stopped, no self-heat is generated and the temperature of the IC is lowered.  
When the temperature has dropped, the thermal shutdown circuit is released, the regulator operation resumes, and  
self-heat is generated again. By repeating this procedure, the output voltage waveform forms pulses. This  
phenomenon, stopping and resuming the regulator operation, continues until the internal power consumption is  
reduced by reducing either the input voltage or output current or both, or the ambient temperature is lowered.  
Table 8  
Thermal Shutdown Circuit  
Operating : 150 °C (typ.)*1  
Released : 120 °C (typ.)*1  
*1. Junction temperature  
VOUT Pin Voltage  
VSS level  
Set value  
5. Externally setting output voltage  
The S-1133 Series provides the types in which output voltage can be set via the external resistor (S-1133B00/S-  
1133A00). With such types, the external voltage can be optionally set between 1.8 V and 8.2 V by connecting a  
resistor (Ra) between the VOUT and VADJ pins and a resistor (Rb) between the VADJ and VSS pins.  
The output voltage to be set is determined by the following formulas.  
V
OUT = 1.8 + Ra × la ·························· (1)  
By substituting Ia = IVADJ + 1.8/Rb to above formula (1),  
OUT = 1.8 + Ra × (IVADJ + 1.8/Rb) = 1.8 × (1.0 + Ra/Rb) + Ra × IVADJ ··············· (2)  
V
In above formula (2), Ra × IVADJ is a factor for the output voltage error.  
Whether the output voltage error is minute is judged depending on the following (3) formula.  
By substituting IVADJ = 1.8/RVADJ to Ra × IVADJ  
VOUT = 1.8 × (1.0 + Ra/Rb) + 1.8 × Ra/RVADJ ··························(3)  
If RVADJ is sufficiently larger than Ra, the error is judged as minute.  
VOUT  
VOUT  
Ia  
Ib  
Ra  
1.8 V  
Rb  
VADJ  
RVADJ  
VIN  
IVADJ  
VSS  
Figure 21  
The following expression is in order to determine output voltage VOUT = 3.0 V.  
If resistance Rb = 2 K, substitute internal resistance in adjust pin RVADJ = 200 k(typ.) into (3),  
Resistance Ra = (3.0/1.8-1) × ((2 k × 200 k)/(2 k + 200 k)) 1.3 kΩ  
Caution The above connection diagrams and constants will not guarantee successful operation. Perform  
thorough evaluation using the actual application to set the constants.  
Seiko Instruments Inc.  
19  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Precautions  
Wiring patterns for the VIN, VOUT and GND pins should be designed so that the impedance is low. When  
mounting an output capacitor between the VOUT and VSS pins (CL) and a capacitor for stabilizing the input between  
VIN and VSS pins (CIN), the distance from the capacitors to these pins should be as short as possible.  
When setting the output voltage using the external resistor, connect the resistors, Ra between the VOUT and VADJ  
pins and Rb between the VADJ and VSS pins close to the respective pins.  
In the product that users set the output voltage externally, it is possible to set a voltage arbitrarily; by feeding back  
the voltage which is from VOUT to the VADJ pin, after dividing it with the dividers connected between the VOUT and  
VADJ pin and the VADJ and VSS pin.  
Note that if any device other than the divider specified above is connected between the VOUT and VADJ pin or the  
VADJ and VSS pin, S-1133 Series may not work stably as a voltage regulator IC.  
Note that the output voltage may increase when a series regulator is used at low load current (1.0 mA or less).  
Note that the output voltage may increase due to driver leakage when a series regulator is used at high  
temperatures.  
A general series regulator may oscillate, depending on the external components selected. The following conditions  
are recommended for this IC. However, be sure to perform sufficient evaluation under the actual usage conditions  
for selection, including evaluation of temperature characteristics.  
Input capacitor (CIN) :  
1.0 µF or more*1  
1.0 µF or more*1  
1.0 or less  
Output capacitor (CL) :  
Equivalent series resistance (ESR) :  
*1. The capacitance is 2.2 µF or more for products whose output voltage is 1.7 V or less.  
The voltage regulator may oscillate when the impedance of the power supply is high and the input capacitor is small  
or an input capacitor is not connected.  
The power supply fluctuation and load fluctuation characteristics become worse. It is therefore important to  
sufficiently evaluate the output voltage fluctuation in the actual equipment.  
If the power supply suddenly increases sharply, a momentary overshoot may be output. It is therefore important to  
sufficiently evaluate the output voltage at power application in the actual equipment.  
When the thermal shutdown circuit starts operating and the regulator stops, input voltage may exceed the absolute  
maximum ratings.  
It will be affected largely when input voltage, output current and inductance of power supply are high.  
Perform thorough evaluation using the actual application.  
The application conditions for the input voltage, output voltage, and load current should not exceed the package  
power dissipation.  
Do not apply an electrostatic discharge to this IC that exceeds the performance ratings of the built-in electrostatic  
protection circuit.  
In determining the output current, attention should be paid to the output current value specified in Tables 5 and 6 in  
“Electrical Characteristics” and footnote *5 of the table.  
SII claims no responsibility for any disputes arising out of or in connection with any infringement by products  
including this IC of patents owned by a third party.  
20  
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Characteristics (Typical Data)  
(1) Output voltage vs. Output current (when load current increases) (Ta = 25 °C)  
S-1133B12  
S-1133B30  
S-1133B60  
Remark In determining the output current, attention  
should be paid to the following.  
1. The minimum output current value and  
footnote *5 in Table 5 to 6 in the  
Electrical Characteristics”  
2. The package power dissipation  
(2) Output voltage vs. Input voltage (Ta = 25 °C)  
S-1133B12  
S-1133B30  
1.30  
3.1  
1.25  
1.20  
3.0  
I
OUT = 1 mA  
2.9  
2.8  
2.7  
2.6  
2.5  
I
OUT = 1 mA  
30 mA  
1.15  
1.10  
1.05  
1.00  
30 mA  
100 mA  
100 mA  
1.0  
1.5  
2.0  
2.5  
3.0  
3.5  
2.5  
3.0  
3.5  
4.0  
4.5  
5.0  
VIN [V]  
VIN [V]  
S-1133B60  
6.5  
6.0  
5.5  
5.0  
I
OUT = 1 mA  
30 mA  
100 mA  
4.5  
4.5  
5.0  
5.5  
6.0  
6.5  
7.0  
VIN [V]  
Seiko Instruments Inc.  
21  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
(3) Dropout voltage vs. Output current  
S-1133B12  
S-1133B30  
0.45  
0.40  
0.35  
0.30  
0.25  
0.20  
0.15  
0.10  
0.05  
0
40°C  
25°C  
85°C  
0
50 100 150 200 250 300 350  
IOUT [mA]  
S-1133B60  
0.45  
0.40  
0.35  
0.30  
0.25  
0.20  
0.15  
0.10  
0.05  
0
40°C  
25°C  
85°C  
0
50 100 150 200 250 300 350  
IOUT [mA]  
(4) Dropout voltage vs. Set output voltage  
22  
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
(5) Output voltage vs. Ambient temperature  
S-1133B12  
S-1133B30  
S-1133B60  
(6) Current consumption vs. Input voltage  
S-1133B12  
S-1133B30  
60  
60  
50  
50  
40  
30  
20  
10  
0
25°C  
85°C  
25°C 40°C  
85°C  
40  
30  
20  
10  
0
40°C  
0
1
2
3
4
5
6
7
8
9
10  
0
1
2
3
4
5
6
7
8
9 10  
VIN [V]  
VIN [V]  
S-1133B60  
60  
50  
40  
30  
20  
10  
0
85°C  
25°C  
40°C  
0
1
2
3
4
5
6
7
8
9 10  
VIN [V]  
Seiko Instruments Inc.  
23  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
(7) Ripple rejection (Ta = 25 °C)  
S-1133B12  
S-1133B30  
VIN = 2.2 V, COUT = 2.2 µF  
VIN = 4.0 V, COUT = 1.0 µF  
100  
80  
60  
40  
20  
0
I
OUT = 1 mA  
50 mA  
100 mA  
10  
100  
1K  
10K 100K  
1M  
Frequency [Hz]  
S-1133B60  
VIN = 7.0 V, COUT = 1.0 µF  
24  
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Reference Data  
(1) Input transient response characteristics (Ta = 25 °C)  
S-1133B12  
S-1133B30  
IOUT = 100 mA, tr = tf = 5.0 µs, COUT = 1.0 µF, CIN = 1.0 µF  
I
OUT = 100 mA, tr = tf = 5.0 µs, COUT = 2.2 µF, CIN = 2.2 µF  
1.36  
1.32  
1.28  
1.24  
1.20  
1.16  
1.12  
3.16  
3.12  
3.08  
3.04  
3.00  
2.96  
2.92  
3.5  
3.0  
2.5  
2.0  
1.5  
6
5
4
3
2
V
IN  
V
IN  
V
OUT  
V
OUT  
1.0  
0.5  
1
0
20 0 20 40 60 80 100120140160180  
t [µs]  
20 0 20 40 60 80 100120140160180  
t [µs]  
S-1133B60  
OUT = 100 mA, tr = tf = 5.0 µs, COUT = 1.0 µF, CIN = 1.0 µF  
I
6.16  
6.12  
6.08  
6.04  
6.00  
5.96  
5.92  
9
8
7
6
5
V
IN  
V
OUT  
4
3
20 0 20 40 60 80 100120140160180  
t [µs]  
(2) Load transient response characteristics (Ta = 25 °C)  
S-1133B12  
S-1133B30  
V
IN = 2.2 V, COUT = 2.2 µF, CIN = 2.2 µF, IOUT = 50 100 mA  
V
IN = 4.0 V, COUT = 1.0 µF, CIN = 1.0 µF, IOUT = 50 100 mA  
1.6  
1.5  
1.4  
1.3  
1.2  
1.1  
1.0  
150  
100  
50  
3.16  
3.12  
3.08  
3.04  
3.00  
2.96  
2.92  
150  
100  
50  
I
OUT  
I
OUT  
0
0
V
OUT  
V
OUT  
50  
100  
150  
50  
100  
150  
40 20 0 20 40 60 80 100120140160  
t [µs]  
40 20 0 20 40 60 80 100120140160  
t [µs]  
S-1133B60  
V
IN = 7.0 V, COUT = 1.0 µF, CIN = 1.0 µF, IOUT = 50 100 mA  
6.16  
6.12  
6.08  
6.04  
6.00  
5.96  
5.92  
150  
100  
50  
I
OUT  
0
V
OUT  
50  
100  
150  
40 20 0 20 40 60 80 100120140160  
t [µs]  
Seiko Instruments Inc.  
25  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
(3) ON/OFF pin transient response characteristics (Ta = 25 °C)  
S-1133B12  
S-1133B30  
V
IN = 2.2 V, COUT = 2.2 µF, CIN = 2.2 µF, IOUT = 100 mA  
V
IN = 4.0 V, COUT = 1.0 µF, CIN = 1.0 µF, IOUT = 100 mA  
5
4
3
2
1
0
10  
8
6
6
4
4
VON/OFF  
V
ON/OFF  
6
2
2
4
0
0
2
2  
4  
6  
2  
4  
6  
V
OUT  
V
OUT  
0
1  
2  
40 20 0 20 40 60 80 100120140160  
t [µs]  
40 20 0 20 40 60 80 100120140160  
t [µs]  
S-1133B60  
V
IN = 7.0 V, COUT = 1.0 µF, CIN = 1.0 µF, IOUT = 100 mA  
14  
12  
10  
8
8
6
4
V
ON/OFF  
2
6
4
2
0
0
V
OUT  
2  
4  
6  
8  
2  
40 20 0 20 40 60 80 100120140160  
t [µs]  
26  
Seiko Instruments Inc.  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
„ Marking Specifications  
(1) SOT-89-5  
SOT-89-5  
Top view  
(1) to (3) : Product code (Refer to Product name vs. Product code.)  
(4) to (6) : Lot number  
5
4
1
2
3
Product name vs. Product code  
Product code  
(2)  
Product code  
(2)  
Product name  
Product name  
(1)  
(3)  
A
B
C
D
E
F
G
H
I
(1)  
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
(3)  
Z
S-1133B00-U5T1G  
S-1133B12-U5T1G  
S-1133B13-U5T1G  
S-1133B14-U5T1G  
S-1133B15-U5T1G  
S-1133B16-U5T1G  
S-1133B17-U5T1G  
S-1133B18-U5T1G  
S-1133B19-U5T1G  
S-1133B20-U5T1G  
S-1133B21-U5T1G  
S-1133B22-U5T1G  
S-1133B23-U5T1G  
S-1133B24-U5T1G  
S-1133B25-U5T1G  
S-1133B26-U5T1G  
S-1133B27-U5T1G  
S-1133B28-U5T1G  
S-1133B29-U5T1G  
S-1133B30-U5T1G  
S-1133B31-U5T1G  
S-1133B32-U5T1G  
S-1133B33-U5T1G  
S-1133B34-U5T1G  
S-1133B35-U5T1G  
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
S-1133B36-U5T1G  
S-1133B37-U5T1G  
S-1133B38-U5T1G  
S-1133B39-U5T1G  
S-1133B40-U5T1G  
S-1133B41-U5T1G  
S-1133B42-U5T1G  
S-1133B43-U5T1G  
S-1133B44-U5T1G  
S-1133B45-U5T1G  
S-1133B46-U5T1G  
S-1133B47-U5T1G  
S-1133B48-U5T1G  
S-1133B49-U5T1G  
S-1133B50-U5T1G  
S-1133B51-U5T1G  
S-1133B52-U5T1G  
S-1133B53-U5T1G  
S-1133B54-U5T1G  
S-1133B55-U5T1G  
S-1133B56-U5T1G  
S-1133B57-U5T1G  
S-1133B58-U5T1G  
S-1133B59-U5T1G  
S-1133B60-U5T1G  
8
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
A
B
C
D
E
F
G
H
I
J
K
L
J
K
L
M
N
O
P
Q
R
S
T
U
V
W
X
Y
M
N
O
P
Q
R
S
T
U
V
W
X
Remark Please contact the SII marketing department for type A products.  
Seiko Instruments Inc.  
27  
HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR  
Rev.2.1_00  
S-1133 Series  
(2) SNT-8A  
SNT-8A  
Top view  
(1)  
Blank  
(2) to (4)  
(5), (6)  
Product code (Refer to Product name vs. Product code)  
1
4
8
5
Blank  
(7) to (11) Lot number  
Product name vs. Product code  
Product code  
(3)  
Product code  
(3)  
Product name  
Product name  
(2)  
(4)  
A
B
C
D
E
F
G
H
I
(2)  
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
(4)  
Z
S-1133B00-I8T1G  
S-1133B12-I8T1G  
S-1133B13-I8T1G  
S-1133B14-I8T1G  
S-1133B15-I8T1G  
S-1133B16-I8T1G  
S-1133B17-I8T1G  
S-1133B18-I8T1G  
S-1133B19-I8T1G  
S-1133B20-I8T1G  
S-1133B21-I8T1G  
S-1133B22-I8T1G  
S-1133B23-I8T1G  
S-1133B24-I8T1G  
S-1133B25-I8T1G  
S-1133B26-I8T1G  
S-1133B27-I8T1G  
S-1133B28-I8T1G  
S-1133B29-I8T1G  
S-1133B30-I8T1G  
S-1133B31-I8T1G  
S-1133B32-I8T1G  
S-1133B33-I8T1G  
S-1133B34-I8T1G  
S-1133B35-I8T1G  
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
Q
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
S-1133B36-I8T1G  
S-1133B37-I8T1G  
S-1133B38-I8T1G  
S-1133B39-I8T1G  
S-1133B40-I8T1G  
S-1133B41-I8T1G  
S-1133B42-I8T1G  
S-1133B43-I8T1G  
S-1133B44-I8T1G  
S-1133B45-I8T1G  
S-1133B46-I8T1G  
S-1133B47-I8T1G  
S-1133B48-I8T1G  
S-1133B49-I8T1G  
S-1133B50-I8T1G  
S-1133B51-I8T1G  
S-1133B52-I8T1G  
S-1133B53-I8T1G  
S-1133B54-I8T1G  
S-1133B55-I8T1G  
S-1133B56-I8T1G  
S-1133B57-I8T1G  
S-1133B58-I8T1G  
S-1133B59-I8T1G  
S-1133B60-I8T1G  
8
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
9
A
B
C
D
E
F
G
H
I
J
K
L
J
K
L
M
N
O
P
Q
R
S
T
U
V
W
X
Y
M
N
O
P
Q
R
S
T
U
V
W
X
Remark Please contact the SII marketing department for type A products.  
28  
Seiko Instruments Inc.  
4.5±0.1  
1.6±0.2  
1.5±0.1  
5
4
1
2
3
1.5±0.1 1.5±0.1  
0.4±0.05  
0.3  
0.4±0.1  
0.4±0.1  
45°  
0.45±0.1  
No. UP005-A-P-SD-1.1  
TITLE  
SOT895-A-PKG Dimensions  
UP005-A-P-SD-1.1  
No.  
SCALE  
UNIT  
mm  
Seiko Instruments Inc.  
4.0±0.1(10 pitches : 40.0±0.2)  
+0.1  
-0  
ø1.5  
2.0±0.05  
+0.1  
-0  
0.3±0.05  
2.0±0.1  
8.0±0.1  
ø1.5  
5° max.  
4.75±0.1  
3
4
2
1
5
Feed direction  
No. UP005-A-C-SD-1.1  
TITLE  
SOT895-A-Carrier Tape  
UP005-A-C-SD-1.1  
No.  
SCALE  
UNIT  
mm  
Seiko Instruments Inc.  
16.5max.  
13.0±0.3  
Enlarged drawing in the central part  
(60°)  
(60°)  
No. UP005-A-R-SD-1.1  
TITLE  
SOT895-A-Reel  
UP005-A-R-SD-1.1  
No.  
QTY.  
SCALE  
UNIT  
1,000  
mm  
Seiko Instruments Inc.  
0.7  
0.7  
1.0  
2.0  
1.5  
1.5  
No. UP005-A-L-S1-1.0  
SOT895-A-Land Recommendation  
TITLE  
No.  
UP005-A-L-S1-1.0  
SCALE  
UNIT  
mm  
Seiko Instruments Inc.  
1.97±0.03  
6
5
8
7
+0.05  
-0.02  
0.08  
1
2
3
4
0.5  
0.48±0.02  
0.2±0.05  
No. PH008-A-P-SD-2.0  
SNT-8A-A-PKG Dimensions  
PH008-A-P-SD-2.0  
TITLE  
No.  
SCALE  
UNIT  
mm  
Seiko Instruments Inc.  
+0.1  
-0  
4.0±0.1  
2.0±0.05  
0.25±0.05  
ø1.5  
0.65±0.05  
ø0.5±0.1  
4.0±0.1  
2.25±0.05  
5°  
4 3 2 1  
5 6 7 8  
Feed direction  
No. PH008-A-C-SD-1.0  
TITLE  
SNT-8A-A-Carrier Tape  
PH008-A-C-SD-1.0  
No.  
SCALE  
UNIT  
mm  
Seiko Instruments Inc.  
12.5max.  
9.0±0.3  
Enlarged drawing in the central part  
ø13±0.2  
(60°)  
(60°)  
No. PH008-A-R-SD-1.0  
SNT-8A-A-Reel  
TITLE  
No.  
PH008-A-R-SD-1.0  
5,000  
SCALE  
UNIT  
QTY.  
mm  
Seiko Instruments Inc.  
0.52  
2.01  
0.52  
0.3  
0.3  
0.3  
0.2  
0.2 0.3  
0.2  
Caution Making the wire pattern under the package is possible. However, note that the package  
may be upraised due to the thickness made by the silk screen printing and of a solder  
resist on the pattern because this package does not have the standoff.  
No. PH008-A-L-SD-3.0  
SNT-8A-A-Land Recommendation  
TITLE  
No.  
PH008-A-L-SD-3.0  
SCALE  
UNIT  
mm  
Seiko Instruments Inc.  
·
·
The information described herein is subject to change without notice.  
Seiko Instruments Inc. is not responsible for any problems caused by circuits or diagrams described herein  
whose related industrial properties, patents, or other rights belong to third parties. The application circuit  
examples explain typical applications of the products, and do not guarantee the success of any specific  
mass-production design.  
·
·
·
When the products described herein are regulated products subject to the Wassenaar Arrangement or other  
agreements, they may not be exported without authorization from the appropriate governmental authority.  
Use of the information described herein for other purposes and/or reproduction or copying without the  
express permission of Seiko Instruments Inc. is strictly prohibited.  
The products described herein cannot be used as part of any device or equipment affecting the human  
body, such as exercise equipment, medical equipment, security systems, gas equipment, or any apparatus  
installed in airplanes and other vehicles, without prior written permission of Seiko Instruments Inc.  
Although Seiko Instruments Inc. exerts the greatest possible effort to ensure high quality and reliability, the  
failure or malfunction of semiconductor products may occur. The user of these products should therefore  
give thorough consideration to safety design, including redundancy, fire-prevention measures, and  
malfunction prevention, to prevent any accidents, fires, or community damage that may ensue.  
·

S-1133B55-I8T1G 相关器件

型号 制造商 描述 价格 文档
S-1133B55-I8T1U ABLIC HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR 获取价格
S-1133B55-U5T1G SII HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR 获取价格
S-1133B55-U5T1X ABLIC HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR 获取价格
S-1133B56-I8T1G SII HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR 获取价格
S-1133B56-I8T1U ABLIC HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR 获取价格
S-1133B56-U5T1G SII HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR 获取价格
S-1133B56-U5T1X ABLIC HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR 获取价格
S-1133B57-I8T1G SII HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR 获取价格
S-1133B57-U5T1G SII HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR 获取价格
S-1133B57-U5T1X ABLIC HIGH RIPPLE-REJECTION AND LOW DROPOUT MIDDLE-OUTPUT CURRENT CMOS VOLTAGE REGULATOR 获取价格

S-1133B55-I8T1G 相关文章

  • Bourns 密封通孔金属陶瓷微调电位计产品选型手册(英文版)
    2024-09-20
    6
  • Bourns 精密环境传感器产品选型手册(英文版)
    2024-09-20
    9
  • Bourns POWrTher 负温度系数(NTC)热敏电阻手册 (英文版)
    2024-09-20
    8
  • Bourns GMOV 混合过压保护组件产品选型手册(英文版)
    2024-09-20
    6